Alert button
Picture for Cong Sun

Cong Sun

Alert button

Deep learning with noisy labels in medical prediction problems: a scoping review

Add code
Bookmark button
Alert button
Mar 19, 2024
Yishu Wei, Yu Deng, Cong Sun, Mingquan Lin, Hongmei Jiang, Yifan Peng

Figure 1 for Deep learning with noisy labels in medical prediction problems: a scoping review
Figure 2 for Deep learning with noisy labels in medical prediction problems: a scoping review
Figure 3 for Deep learning with noisy labels in medical prediction problems: a scoping review
Figure 4 for Deep learning with noisy labels in medical prediction problems: a scoping review
Viaarxiv icon

CafkNet: GNN-Empowered Forward Kinematic Modeling for Cable-Driven Parallel Robots

Add code
Bookmark button
Alert button
Mar 05, 2024
Zeqing Zhang, Linhan Yang, Cong Sun, Weiwei Shang, Jia Pan

Viaarxiv icon

Demonstration-based learning for few-shot biomedical named entity recognition under machine reading comprehension

Add code
Bookmark button
Alert button
Aug 12, 2023
Leilei Su, Jian Chen, Yifan Peng, Cong Sun

Figure 1 for Demonstration-based learning for few-shot biomedical named entity recognition under machine reading comprehension
Figure 2 for Demonstration-based learning for few-shot biomedical named entity recognition under machine reading comprehension
Figure 3 for Demonstration-based learning for few-shot biomedical named entity recognition under machine reading comprehension
Figure 4 for Demonstration-based learning for few-shot biomedical named entity recognition under machine reading comprehension
Viaarxiv icon

A Motion Assessment Method for Reference Stack Selection in Fetal Brain MRI Reconstruction Based on Tensor Rank Approximation

Add code
Bookmark button
Alert button
Jun 30, 2023
Haoan Xu, Wen Shi, Jiwei Sun, Tianshu Zheng, Cong Sun, Sun Yi, Guangbin Wang, Dan Wu

Figure 1 for A Motion Assessment Method for Reference Stack Selection in Fetal Brain MRI Reconstruction Based on Tensor Rank Approximation
Figure 2 for A Motion Assessment Method for Reference Stack Selection in Fetal Brain MRI Reconstruction Based on Tensor Rank Approximation
Figure 3 for A Motion Assessment Method for Reference Stack Selection in Fetal Brain MRI Reconstruction Based on Tensor Rank Approximation
Figure 4 for A Motion Assessment Method for Reference Stack Selection in Fetal Brain MRI Reconstruction Based on Tensor Rank Approximation
Viaarxiv icon

A microstructure estimation Transformer inspired by sparse representation for diffusion MRI

Add code
Bookmark button
Alert button
May 13, 2022
Tianshu Zheng, Cong Sun, Weihao Zheng, Wen Shi, Haotian Li, Yi Sun, Yi Zhang, Guangbin Wang, Chuyang Ye, Dan Wu

Figure 1 for A microstructure estimation Transformer inspired by sparse representation for diffusion MRI
Figure 2 for A microstructure estimation Transformer inspired by sparse representation for diffusion MRI
Figure 3 for A microstructure estimation Transformer inspired by sparse representation for diffusion MRI
Figure 4 for A microstructure estimation Transformer inspired by sparse representation for diffusion MRI
Viaarxiv icon

AFFIRM: Affinity Fusion-based Framework for Iteratively Random Motion correction of multi-slice fetal brain MRI

Add code
Bookmark button
Alert button
May 12, 2022
Wen Shi, Haoan Xu, Cong Sun, Jiwei Sun, Yamin Li, Xinyi Xu, Tianshu Zheng, Yi Zhang, Guangbin Wang, Dan Wu

Figure 1 for AFFIRM: Affinity Fusion-based Framework for Iteratively Random Motion correction of multi-slice fetal brain MRI
Figure 2 for AFFIRM: Affinity Fusion-based Framework for Iteratively Random Motion correction of multi-slice fetal brain MRI
Figure 3 for AFFIRM: Affinity Fusion-based Framework for Iteratively Random Motion correction of multi-slice fetal brain MRI
Figure 4 for AFFIRM: Affinity Fusion-based Framework for Iteratively Random Motion correction of multi-slice fetal brain MRI
Viaarxiv icon

Resource allocation for reconfigurable intelligent surface aided broadcast channels

Add code
Bookmark button
Alert button
Feb 14, 2022
Cong Sun, Xian Liu, Bile Peng, Eduard Jorswieck

Figure 1 for Resource allocation for reconfigurable intelligent surface aided broadcast channels
Figure 2 for Resource allocation for reconfigurable intelligent surface aided broadcast channels
Figure 3 for Resource allocation for reconfigurable intelligent surface aided broadcast channels
Figure 4 for Resource allocation for reconfigurable intelligent surface aided broadcast channels
Viaarxiv icon

Reconfigurable Intelligent Surface Enabled Spatial Multiplexing with Fully Convolutional Network

Add code
Bookmark button
Alert button
Jan 08, 2022
Bile Peng, Jan-Aike Termöhlen, Cong Sun, Danping He, Ke Guan, Tim Fingscheidt, Eduard A. Jorswieck

Figure 1 for Reconfigurable Intelligent Surface Enabled Spatial Multiplexing with Fully Convolutional Network
Figure 2 for Reconfigurable Intelligent Surface Enabled Spatial Multiplexing with Fully Convolutional Network
Figure 3 for Reconfigurable Intelligent Surface Enabled Spatial Multiplexing with Fully Convolutional Network
Figure 4 for Reconfigurable Intelligent Surface Enabled Spatial Multiplexing with Fully Convolutional Network
Viaarxiv icon

Control Parameters Considered Harmful: Detecting Range Specification Bugs in Drone Configuration Modules via Learning-Guided Search

Add code
Bookmark button
Alert button
Dec 07, 2021
Ruidong Han, Chao Yang, Siqi Ma, JiangFeng Ma, Cong Sun, Juanru Li, Elisa Bertino

Figure 1 for Control Parameters Considered Harmful: Detecting Range Specification Bugs in Drone Configuration Modules via Learning-Guided Search
Figure 2 for Control Parameters Considered Harmful: Detecting Range Specification Bugs in Drone Configuration Modules via Learning-Guided Search
Figure 3 for Control Parameters Considered Harmful: Detecting Range Specification Bugs in Drone Configuration Modules via Learning-Guided Search
Figure 4 for Control Parameters Considered Harmful: Detecting Range Specification Bugs in Drone Configuration Modules via Learning-Guided Search
Viaarxiv icon